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April 18, 2026Thermophysics and Aeromechanics1 citations

Experimental study of heat transfer during cooling of a high-temperature surface by a water-air spray

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AZA. ZakharenkovADA. DemidovADA. Dedov

Key Points

  • This study aims to assess the efficiency of a water-air spray cooling system under high heat conditions.
  • Conducted experiments in the 'One-Sided Target Heating' thermophysical test facility.
  • Varied flow rates of water (0.5 to 2 l/min) and air (2 to 100 l/min).
  • Measured heat loads and cooling performance of the system.
  • The cooling system effectively removed heat loads up to 10 MW/m2.
  • Achieved heat transfer coefficients as high as 150 kW/(m2·K).
  • Maintained low pressures of coolant components during cooling.

Abstract

This paper presents the results of a study into the cooling efficiency of a target in a test section using a water-air spray under high heat flux conditions that is applicable to solving temperature control problems in the fusion energy, microelectronic, and metallurgical industries. Experimental studies were conducted in the ‘One-Sided Target Heating’ thermophysical test facility at the National Research University “Moscow Power Engineering Institute” (MPEI). In the experiments, the flowrates of the coolant components ranged from 0.5 to 2 l/min for water and from 2 to 100 l/min for air. It is found that this cooling system can remove heat loads as high as 10 MW/m2 from the target at relatively low pressures of the coolant components. The study demonstrates that the examined cooling method can yield heat transfer coefficients of up to 150 kW/(m2·K).

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Cite This Study

Zakharenkov et al. (2026) studied this question.

synapsesocial.com/papers/69e320cc40886becb653ff0ahttps://doi.org/10.1134/s0869864325010263
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